scholarly journals Regenerative and LoRa Based Trooper Monitoring System for Armed Forces

2021 ◽  
Author(s):  
Hema R ◽  
Dathathreya P ◽  
Athitya V ◽  
Anumitha B

Communication between soldier at border line is crucial. Existing system used for communication between soldiers at border line in military consumes a lot of power. The greatest difficulties in Indian armed forces operation is the Soldiers are not able to do transmission of messages with headquarters base station controller in case of emergency or when needed any help. Also, the current status and location of the soldiers cannot be detected with this system. The proposed methodology gives us Long Range (LoRa) based medical supervision and emplacement trailing and tracking system for soldiers. This type of advanced design can be mounted on the soldier’s shoe to ensure their safety. In case of death of the soldier, the controller intimates to the camp office control along with soldier’s location. The proposed system includes sensors, GPS, and transmission modules, as well as miniaturized wearable physiological equipment. Hence, it is possible to implement a low-cost mechanism to provide needed help in the battlefield.

2011 ◽  
Vol 474-476 ◽  
pp. 735-738
Author(s):  
Ya Jun Fan ◽  
Yu Guo ◽  
Chuan Hui Wu

In order to change the current status that machine condition monitoring system is only generally applied to key equipments of large-scaled and high-end business, a low-cost mini condition monitoring system of rotating machinery based on LabVIEW is proposed and designed in this paper. The system is not only of advantages of lower cost, stronger expandability and higher applicability, but also changes the condition that current systems emphasize too much on the comprehensiveness, universality and complexity. It is capable of meeting the wide range of condition monitoring of common rotating machinery, for faults diagnosis and predictive maintenance needs better, then, its potential application can be foreseen.


Author(s):  
Xin-Lin Wang ◽  
Bora Ha ◽  
Frank Andrew Manongi ◽  
Woo-Kyun Jung ◽  
Yusufu Abeid Chande Jande ◽  
...  

With the advances in electronics and control software, robotic arms are now capable of quick and accurate movement under a wide range of conditions. Robotic surgery has become the most important field of general surgery. This rapid progress is quantitative and qualitative .The common procedures performed in Robotic Field and the future advancements are being discussed in this paper. Along with the existing system of Robotic surgery the advanced instruments and the future possibilities are being discussed. This project will help to solve the existing problems in robotic surgery even in other additional fields. Now a days the limitations of WiFi has reduced the usage in medical field especially. Therefore a LiFi based system will enable to overcome the limitations of Wi-Fi. A continuous monitoring of the vital parameters of the body like temperature, pulse rate and glucose level is also required. Regular interval of time measuring the intensive parameter of the patient’s health with a low cost micro controller and intelligent LiFi based advanced patient monitoring system is developed and if any abnormal condition occurs, it directly sends a message to the doctor’s base station machine via Li-If that particular word no’s particular parameter is out of the range. Doctor can do the fast assessment of the patient’s health without wasting the time with the help of an alert message.


Smart Cities ◽  
2020 ◽  
Vol 3 (1) ◽  
pp. 138-156 ◽  
Author(s):  
Spiridon Vergis ◽  
Vasileios Komianos ◽  
Georgios Tsoumanis ◽  
Athanasios Tsipis ◽  
Konstantinos Oikonomou

With the rapid increase of vehicles in use worldwide, the need for efficient traffic monitoring systems has arisen. This work proposes a low-cost vehicular traffic monitoring system using IoT devices and fog computing. The system is based on a three-tiered architecture which is composed of (i) the mobile tracking system that records the positions of the vehicles using GPS technologies; (ii) the information gathering system which gathers all the data collected by the mobile tracking system; and (iii) the fog devices that process the data collected and extract the information needed. The system is tested in the town of Corfu during a period of increased tourism when the traffic is considered to be relatively dense. The mobile tracking system devices are placed on taxis and with the help of professional taxi drivers the accuracy of the data collected is evaluated. The system is able to record the movement of the vehicles accurately using its own independent data. The results can be remotely accessed by utilizing fog and cloud computing infrastructure established to process the data and upload it on a server. The system is used to give a better understanding of the speed variance in the center of the town during different dates and hours. In conclusion the system presented in this study can be utilized to monitor the traffic and provide vital information about its behavior in relation to time.


2013 ◽  
Vol 694-697 ◽  
pp. 2638-2641
Author(s):  
Yin Liu ◽  
Lu Zhang ◽  
Jin Du ◽  
Peng Zhang ◽  
Xue Li Song ◽  
...  

This study presents a design of an advanced embedded remote monitoring system based on the current computer network technology.This monitoring system carries out a data acquisition process by an embedded field monitor uploads the environmental information and alarm massages to a monitoring center computer and completes the data processing and data storage. The field monitor used in the monitoring system is composed of a data acquisition card and a network transmission card. This monitoring system with low cost simple equipments has practical accuracy that is suitable for unmanned machine room, base station, intelligent community and living house.


Author(s):  
Xinlin Wang ◽  
Bora Ha ◽  
Frank Andrew Manongi ◽  
Woo-Kyun Jung ◽  
Yusufu Abeid Chande Jande ◽  
...  

Author(s):  
I Made Oka Widyantara ◽  
I Made Dwi Asana Putra ◽  
Ida Bagus Putu Adnyana

This paper intends to explain the development of Coastal Video Monitoring System (CoViMoS) with the main characteristics including low-cost and easy implementation. CoViMoS characteristics have been realized using the device IP camera for video image acquisition, and development of software applications with the main features including detection of shoreline and it changes are automatically. This capability was based on segmentation and classification techniques based on data mining. Detection of shoreline is done by segmenting a video image of the beach, to get a cluster of objects, namely land, sea and sky, using Self Organizing Map (SOM) algorithms. The mechanism of classification is done using K-Nearest Neighbor (K-NN) algorithms to provide the class labels to objects that have been generated on the segmentation process. Furthermore, the classification of land used as a reference object in the detection of costline. Implementation CoViMoS system for monitoring systems in Cucukan Beach, Gianyar regency, have shown that the developed system is able to detect the shoreline and its changes automatically.


Sign in / Sign up

Export Citation Format

Share Document